Engineering Mechanics: Dynamics, SI Units, 15th edition

Published by Pearson (June 20, 2023) © 2023

  • Russell C. Hibbeler

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Title overview

For dynamics courses

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Dynamics excels in providing a clear and thorough presentation of the theory and application of engineering mechanics. Engineering Mechanics empowers students to succeed by drawing upon Professor Hibbeler's decades of everyday classroom experience and his knowledge of how students learn. The text is shaped by the comments and suggestions of hundreds of reviewers in the teaching profession, as well as many of the author's students.

A variety of new video types are available for the 15th Edition in SI units. The author carefully developed each video to expertly demonstrate how to solve problems, model the best way to reach a solution, and give students extra opportunities to practice honing their problem-solving skills; he also summarises key concepts discussed in the text, supported by additional figures, animations, and photos. The text provides a large variety of problems, 30% of which are new, with varying levels of difficulty that cover a broad range of engineering disciplines and stress practical, realistic situations. An expanded Answer Section in the back of the book now includes additional information related to the solution of select Fundamental and Review Problems in order to offer students even more guidance in solving the problems.

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Key features

  • Procedures for Analysis provide a logical, orderly method for analysing general and specific mechanics problems.
  • Important Points summarise crucial concepts and what should be known to apply the theory to solve problems.
  • End-of-chapter reviews provide a concise self-study tool. Each important point is accompanied by the relevant equation and art.
  • Conceptual problems engage students in thinking through a real-life situation depicted in a photo.
  • Free-Body Diagram problems let students practice key skills in solving equilibrium problems.
  • Homework problems with various levels of difficulty let students apply their knowledge to realistic situations.

New to this edition

  • Re-written material provides further clarification of concepts and enhanced accuracy.
  • New photos and photorealistic art show how the principles apply to real-world situations and how materials behave under load.
  • Approximately 30% new problems involve applications to many different fields of engineering.
  • Fundamental problems offer more chances for students to practice basic applications and develop their problem-solving skills. Some new Fundamental problems have been added, along with their partial solutions.
  • Answer section at the back of the book includes additional information related to the solution of select Fundamental and Review problems in order to offer students guidance in solving the problems.

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  • Embedded Videos to illustrate or expand on key chapter concepts, helping students
  • Engage students with a blended learning approach merging digital content with complementary homework, tutorials, and assessments.
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Table of contents

  • Kinematics of a Particle 
  • Kinetics of a Particle: Force and Acceleration 
  • Kinetics of a Particle: Work and Energy 
  • Kinetics of a Particle: Impulse and Momentum 
  • Planar Kinematics of a Rigid Body 
  • Planar Kinetics of a Rigid Body: Force and Acceleration 
  • Planar Kinetics of a Rigid Body: Work and Energy 
  • Planar Kinetics of a Rigid Body: Impulse and Momentum 
  • Three-Dimensional Kinematics of a Rigid Body 
  • Three-Dimensional Kinetics of a Rigid Body 
  • Vibrations
  • APPENDIX
  • Mathematical Review and Expressions
  • Fundamental Problems Partial Solutions and Answers 
  • Answers

Author bios

R. C. Hibbeler graduated from the University of Illinois at Urbana with a BS in Civil Engineering (majoring in Structures) and an MS in Nuclear Engineering. He obtained his PhD in Theoretical and Applied Mechanics from Northwestern University. Professor Hibbeler's professional experience includes postdoctoral work in reactor safety and analysis at Argonne National Laboratory, and structural and stress analysis work at Chicago Bridge and Iron, as well as at Sargent and Lundy in Chicago. He has practiced engineering in Ohio, New York, and Louisiana.

Professor Hibbeler currently teaches both civil and mechanical engineering courses at the University of Louisiana - Lafayette. In the past, he has taught at the University of Illinois at Urbana, Youngstown State University, Illinois Institute of Technology, and Union College.

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